Effect of electric fan use in isolation or combined with ice slurry/cold water ingestion and lower-leg immersion in young men during intermittent physical activity in hot-humid conditions.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2023-11-01 Epub Date: 2023-09-12 DOI:10.1139/apnm-2023-0013
Thomas A Deshayes, Timothée Pancrate, Eric D B Goulet
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引用次数: 0

Abstract

Using a randomized crossover protocol, 10 young men completed four 180 min exposures (38 °C, 60% relative humidity), alternating between 30 min of walking and 30 min of sitting where fluid or ice slurry were served. Participants underwent four trials: (i) 5 mL·kg body mass-1 of 20 °C water (CON); (ii) 5 mL·kg body mass-1 of 20 °C water + fan at 4 m·s-1 (FAN); (iii) fan + 3 mL·kg body mass-1 of ice slurry + 2 mL·kg body mass-1 of 4 °C water (FAN + ISCW); and (iv) FAN + ISCW + lower-leg immersion in 20 °C water (FAN + ISCW + LLI). Sweat and body mass losses were higher with FAN than CON, FAN + ISCW, and FAN + ISCW + LLI. Mean and peak changes in Δrectal temperature, heart rate, and perceived heat and thirst from baseline were not statistically and practically different between FAN and CON. FAN + ISCW + LLI decreased sweat loss compared with FAN + ISCW and mean and peak changes in Δrectal temperature, heart rate, and perceived thirst compared with CON. FAN + ISCW + LLI also attenuated the changes in Δrectal temperature (peak) and thirst (mean and peak) compared with FAN. In conclusion, FAN slightly exacerbates fluid loss but does not attenuate the changes in Δrectal temperature, heart rate, and perceived heat and thirst during intermittent physical activity in hot-humid conditions. However, coupling ISCW or ISCW + LLI with the use of a fan attenuates the increase in these outcomes compared with no intervention and to a greater extent for rectal temperature and thirst when fan is coupled with ISCW + LLI than when it is used in isolation.

在湿热条件下进行间歇性体育活动时,单独使用电扇或与冰浆/冷水摄入和小腿浸泡相结合使用电扇对年轻男性的影响。
使用随机交叉方案,10名年轻男子完成了四次180分钟的暴露(38°C,60%相对湿度),在提供液体或冰浆的地方,交替步行30分钟和坐着30分钟。参与者接受了四项试验:(i)5 mL·kg体重-1的20°C水(CON);(ii)5 mL·kg体重-1的20°C水+4 m·s-1的风扇(fan);(iii)风扇+3 mL·kg体重-1的冰浆+2 mL·kg质量-1的4°C水(fan+ISCW);以及(iv)FAN+ISCW+小腿浸入20°C水中(FAN+ISCW+LLI)。FAN组的汗液和体重损失高于CON、FAN+ISCW和FAN+ISCW+LLI组。从基线开始,Δ直肠温度、心率、感知热和口渴的平均和峰值变化在FAN和CON之间没有统计学和实践上的差异。与FAN+ISCW相比,FAN+ISCW+LLI减少了汗液流失,与CON相比,Δ直肠温度、心率和感知口渴的平均变化和峰值变化减少。与FAN相比,FAN+ISCW+LLI还减弱了Δ直肠温度(峰值)和口渴(平均值和峰值)的变化。总之,在湿热条件下进行间歇性体育活动时,FAN会略微加重液体损失,但不会减弱Δ直肠温度、心率以及感知到的热和口渴的变化。然而,与不干预相比,将ISCW或ISCW+LLI与风扇结合使用可以减弱这些结果的增加,并且当风扇与ISCW+LLI结合使用时,与单独使用时相比,可以在更大程度上减轻直肠温度和口渴。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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